Cross-scale cooperation enables sustainable use of a common-pool resource
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Ringsmuth, Andrew K.
Lade, Steven
Schlüter, Maja
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The Royal Society Publishing
Abstract
In social-ecological systems (SESs), social and biophysical dynamics interact
within and between the levels of organization at multiple spatial and temporal
scales. Cross-scale interactions (CSIs) are interdependences between
processes at different scales, generating behaviour unpredictable at single
scales. Understanding CSIs is important for improving SES governance,
but they remain understudied. Theoretical models are needed that capture
essential features while being simple enough to yield insights into mechanisms.
In a stylized model, we study CSIs in a two-level system of weakly
interacting communities harvesting a common-pool resource. Community
members adaptively conform to, or defect from, a norm of socially optimal
harvesting, enforced through social sanctioning both within and between
communities. We find that each subsystem’s dynamics depend sensitively
on the other despite interactions being much weaker between subsystems
than within them. When interaction is purely biophysical, stably high
cooperation in one community can cause cooperation in the other to collapse.
However, even weak social interaction can prevent the collapse of
cooperation and instead cause collapse of defection. We identify conditions
under which subsystem-level cooperation produces desirable system-level
outcomes. Our findings expand evidence that collaboration is important for
sustainably managing shared resources, showing its importance even when
resource sharing and social relationships are weak.
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Royal Society of London. Proceedings B. Biological Sciences
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Restricted until
2099-12-31
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